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, including researchers, faculty members, engineers and technicians, as well as non-permanent staff, including fixed-term contract researchers, postdoctoral researchers, PhD students and interns, distributed
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observables, including: the spatial distribution and migration of seismicity, magnitude-frequency statistics and temporal clustering, source properties (strain drop, duration, moment-duration scaling), and
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natural environments. It fits with Sustainable Transitions axe of the TIRIS program (https://anr.fr/ProjetIA-22-EXES-0015 ), addressing challenges related to energy transition, resource conservation and
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user requests into dataflows, API calls, analytics workflows, and robotic actions across distributed IoT, drone, and agri-robot ecosystems. It will address challenges such as semantic grounding
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are reaching their limits in the face of the increasing complexity of distributed energy systems. The simultaneous presence of multiple energy sources, frequent topology changes, interactions between physical
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symmetry is broken, as at interfaces. SHG intensity depends on the number of adsorbed molecules, their orientational distribution, and the local electrostatic environment, and has proven sensitive
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of kinematic distributions and the polarization of vector bosons at high energies. This PhD project focuses on the study of vector-boson pair production in association with two forward hadronic jets, a
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, specifically designed for radiolysis studies, will be used to determine the nature and energy distribution of radiolytic species generated in water (hydrated electrons, photons, H• radicals, H₂O₂, etc.) under